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Articles

Characteristics of Calcium Carbonate Crystals Mediated Bacillus cereus

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Pages 884-890 | Received 10 Mar 2022, Accepted 02 Jun 2022, Published online: 15 Jun 2022

References

  • Achal V, Mukherjee A, Reddy MS. 2010. Isolation and characterization of urease producing and calcifying bacteria from cement. J Microbiol Biotechnol 20(11):1571–1576.
  • Akyol E, Bozkaya O, Dogan NM. 2017. Strengthening sandy soils by microbial methods. Arab J Geosci 10:327.
  • Anbu P, Kang CH, Shin YJ, So JS. 2016. Formations of calcium carbonate minerals by bacteria and its multiple applications. Springerplus 5:250.
  • Anitha V, Abinaya K, Prakash S, Seshagiri Rao A, Vanavil B. 2018. Bacillus cereus KLUVAA mediated biocement production using hard water and urea. ChemBiochemEngQ 32(2):257–266.
  • Anneza LH, Irwan JM, Othman N, Faisal Alshalif A. 2016. Identification of bacteria and the effect on compressive strength of concrete. MATEC Web Conf 47:01008.
  • Arthi MB, Dhaarani MK. 2016. A study on strength and self-healing characteristics of bacterial concrete. IJETT 38(3):121–127.
  • Berthelot MPE. 1859. Berthelot’s Reaction Mechanism. Report de Chimie Applique 2884.
  • Bozbeyoglu NN, Şensoy Candoğan T, Arslan S, Kabalay B, Bozkaya O, Akyol E, Mercan Doğan N. 2020. Calcium carbonate precipitation by urease and carbonic anhydrase positive bacteria. Pamukkale J Eng Sci 26(3):513–518.
  • Chen E, Berrocal CG, Lofgren I, Lundgren K. 2020. Correlation between concrete cracks and corrosion characteristics of steel reinforcement in pre-cracked plain and fibre-reinforced concrete beams. Mater Struct 53:33.
  • Christensen WB. 1946. Urea decomposition as a means of differentiating Proteus and paracolon cultures from each other and from Salmonella and Shigella types. J Bacteriol 52(4):461–466.
  • Chunxiang Q, Jianyun W, Ruixing W, Liang C. 2009. Corrosion protection of cement-based building materials by surface deposition of CaCO3 by Bacillus pasteurii. Mater Sci Eng 29(4):1273–1280.
  • Dhami NK, Reddy MS, Mukherjee A. 2013a. Bacillus megaterium mediated mineralization of calcium carbonate as biogenic surface treatment of green building materials. World J Microbiol Biotechnol 29(12):2397–2406.
  • Dhami NK, Reddy MS, Mukherjee A. 2013b. Biomineralization of calcium carbonate polymorphs by the bacterial strains isolated from calcareous sites. J Microbiol Biotechnol 23(5):707–714.
  • Feng J, Chen B, Sun W, Wang Y. 2021. Microbial induced calcium carbonate precipitation study using Bacillus subtilis with application to self-healing concrete preparation and characterization. Constr Build Mater 280:122460.
  • Kadyan S, Panghal M, Singh K, Yadav JP. 2013. Development of a PCR based marker system for easy identification and classification of aerobic endospore forming bacilli. Springerplus 2:596.
  • Kawaguchi T, Decho AW. 2002. A laboratory investigation of cyanobacterial extracellular polymeric secretion (EPS) in influencing CaCO3 polymorphism. J Cryst Growth 240(1-2):230–235.
  • Krishnapriya S, Venkatesh Babu DL, Prince Arulraj G. 2015. Isolation and identification of bacteria to improve the strength of concrete. Microbiol Res 174:48–55.
  • Laemmli UK. 1970. Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature 227(5259):680–685.
  • Lowry OH, Rosebrough NJ, Farr AL, Randall RJ. 1951. Protein measurement with the Folin phenol reagent. J Biol Chem 193(1):265–275.
  • Mekonnen E, Kebede A, Nigussie A, Kebede G, Tafesse M. 2021. Isolation and characterization of urease-producing soil bacteria. Int J Microbiol 2021:8888641.
  • Mercimek Takci HA, Bakirhan P, Caktu Guler K. 2020. Urease purification from indigenous soil bacteria and accumulation of CaCO3 crystals. IJBCH 13(2):24–29.
  • Mudgil D, Baskar S, Baskar R, Paul D, Shouche YS. 2018. Biomineralization potential of Bacillus subtilis, Rummeliibacillus stabekisii and Staphylococcus epidermidis strains in vitro isolated from Speleothems, Khasi Hill Caves, Meghalaya, India. Geomicrobiol J 35(8):675–694.
  • Nagarajan V, Karthik Prabhu T, Gowri Shankar M, Jagadesh P. 2017. A study on the strength of the bacterial concrete embedded with Bacillus megaterium. Int Res J Eng Technol 4(12):1784–1788.
  • Obst M, Dynes JJ, Lawrence JR, Swerhone GDW, Benzerara K, Karunakaran C, Kaznatcheev K, Tyliszczak T, Hitchcock AP. 2009. Precipitation of amorphous CaCO3 (aragonite-like) by cyanobacteria: a STXM study of the influence of EPS on the nucleation process. Geochim Cosmochim Acta 73(14):4180–4198.
  • Okwadha GD, Li J. 2010. Optimum conditions for microbial carbonate precipitation. Chemosphere 81(9):1143–1148.
  • Okyay TO, Rodrigues DF. 2014. Optimized carbonate microparticle production by Sporosarcina pasteurii using response surface methodology. Ecol Eng 62:168–174.
  • Park SJ, Park YM, Chun WY, Kim WJ, Ghim SY. 2010. Calcite-forming bacteria for compressive strength improvement in mortar. J Microbiol Biotechnol 20(4):782–788.
  • Priya JN, Kannan M. 2017. Effect of carbonic anhydrase and urease on bacterial calcium carbonate precipitation. Int J Pharma Bio Sci 8(3):609–614.
  • Ramachandran SK, Ramakrishnan V, Bang SS. 2001. Remediation of concrete using micro-organisms. ACI Mater J 98(1):3–9.
  • Rivadeneyra MA, Ramos-Cormenzana A, Delgado G, Delgado R. 1996. Process of carbonate precipitation by Deleya halophila. Curr Microbiol 32(6):308–313.
  • Rodriguez OG, Hooton RD. 2003. Influence of cracks on chloride ingress into concrete. ACI Mater J 100(2):120–126.
  • Sondi I, Salopek-Sondi B. 2005. Influence of the primary structure of enzymes on the formation of CaCO3 polymorphs: a comparison of plant (Canavalia ensiformis) and bacterial (Bacillus pasteurii) urease. Langmuir 21(19):8876–8882.
  • Tepe M, Arslan Ş, Koralay T, Mercan Doğan N. 2019. Precipitation and characterization of CaCO3 of Bacillus amyloliquefaciens U17 strain producing urease and carbonic anhydrase. Turk J Biol 43(3):198–208.
  • Wei S, Cui H, Jiang Z, Liu H, He H, Fang N. 2015. Biomineralization processes of calcite induced by bacteria isolated from marine sediments. Braz J Microbiol 46(2):455–464.

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